scholarly journals Analytical solution of deep tunnels in a strain-hardening elasto-plastic rock mass

2020 ◽  
Vol 17 (6) ◽  
Author(s):  
Denise Bernaud ◽  
Felipe P. M. Quevedo
2021 ◽  
Vol 2021 ◽  
pp. 1-9
Author(s):  
Jiliang Pan ◽  
Fenhua Ren ◽  
Meifeng Cai

The prediction of rockburst proneness is the basis of preventing and controlling rockburst disasters in rock engineering. Based on energy theory and damage mechanics, the quantitative functional relationship between joint density and energy density was derived. Then, the theoretical results were verified by numerical simulation and uniaxial compression test, and the effect of joint density on rockburst proneness of the elastic-brittle-plastic rock mass was discussed. The results show that the relationship between the joint density and the dissipated energy index of the jointed rock mass is a logarithmic function. With the same total input energy, the higher the joint density, the more the damage dissipation energy. Even in the case of high joint density, the rock mass still has limited resistance to external failure. Under the same joint density, the strength of parallel jointed rock mass is better than that of the cross-jointed rock mass, and the parallel jointed rock mass can accumulate more elastic strain energy and has higher rockburst proneness. The joint density is closely related to the ability of the rock mass to store high strain energy. The higher the joint density is, the weaker the ability to accumulate the elastic strain energy of rock mass is and the lower the rockburst proneness is. It is helpful to predict rockburst proneness by investigating and studying the properties of geological discontinuities. The research results have some theoretical and engineering guiding significance for the prediction of rockburst proneness of the jointed rock mass.


2017 ◽  
Vol 173 ◽  
pp. 1056-1063 ◽  
Author(s):  
Aditya Singh ◽  
K. Seshagiri Rao ◽  
Ramanathan Ayothiraman

Author(s):  
Xiangjian Dong ◽  
Ali Karrech ◽  
Hakan Basarir ◽  
Mohamed Elchalakani ◽  
Chongchong Qi

2019 ◽  
Vol 16 (6) ◽  
Author(s):  
Xiao-Fei Wang ◽  
Bin-Song Jiang ◽  
Qiang Zhang ◽  
Meng-Meng Lu ◽  
Miao Chen

2004 ◽  
Vol 261-263 ◽  
pp. 639-644 ◽  
Author(s):  
Chong Ge Wang ◽  
Zhao Qing Song ◽  
Wei Zhong Chen ◽  
Quan Sheng Liu ◽  
Chien Hsin Yang

This paper introduces temperature effect to rock model. It sets up a thermo-visco-elastic-plastic rock model. Based on the rock model which consists of spring, dashpot and plastic elements under the condition of un-axial compression, the behaviors of the thermo-visco-elastic-plastic in rock are discussed, and the equations of the constitutive, creep, unload and relaxation have been obtained. This model can reflect the rock or rock mass average thermo-rheology character. Meanwhile, this study gives a explanation of the significances of this kind of model in the practical use.


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